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Interfacial wave effects on heat transfer to a falling liquid film.

机译:界面波对热量传递到下降的液膜的影响。

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摘要

xperiments were performed to provide insight into the heat transfer aspects of a wavy liquid film. Local film thickness and liquid temperature were measured simultaneously using a thermal conductance thickness probe and fast response thermocouples as the wavy film fell over an electrically heated wall. Liquid temperature at a fixed distance from the wall generally increased in the thin substrate portion of the film and decreased within the large waves. Temperature showed complex excursions within the large waves due to turbulent eddies and the relative liquid motion between the large wave and surrounding substrate. The measurements were examined with the aid of statistical tools to investigate the relationship between film thickness and liquid temperature at various film Reynolds numbers and heat fluxes. The correlative between the two variables was stronger at higher heat fluxes than at lower fluxes. A cross-spectrum analysis showed a distinct band of dominant frequencies in the relationship between the two variables.;A technique using hot-wire method for local thickness measurements of dielectric liquid films is presented. The thickness probe was made from 0.0254 mm diameter platinum-10% rhodium wire which was stretched across the liquid-gas interface. A constant d.c. current was applied through the probe wire, and film thickness was determined from variations in the probe voltage drop. The technique allows simultaneous measurements of film thicknesses and liquid temperature for direct contact resistive heating of deionized water. A clear and simple wave profile is directly available without filtering signals.;Variations of the wall temperature and convection heat transfer coefficient during a wave period were studied numerically using boundary conditions for liquid temperature obtained from experimental measurements. The energy equation in the heater wall was solved assuming periodic boundary conditions in the moving coordinates. Results show significant heat flux and convection heat transfer coefficient variation over a wave period. But the wall temperature fluctuation was so small that an assumption of uniform wall temperature over a wave period resulted in a small error in the heat transfer calculations for Re
机译:进行了实验以提供对波浪状液体膜的传热方面的了解。当波浪形薄膜掉落到电加热壁上时,使用导热厚度探针和快速响应热电偶同时测量局部薄膜厚度和液体温度。在距壁一定距离处的液体温度通常在薄膜的薄基板部分中升高,而在大波浪中降低。由于涡流和大波与周围基底之间的相对液体运动,温度在大波内显示出复杂的偏移。借助于统计工具检查测量结果,以研究在各种薄膜雷诺数和热通量下薄膜厚度与液体温度之间的关系。在较高的热通量下,两个变量之间的相关性要强于在较低的通量下。交叉频谱分析显示了两个变量之间关系中的主频带明显不同。;提出了一种使用热线法测量介电液膜局部厚度的技术。测厚仪由直径0.0254毫米的铂-10%铑丝制成,并延伸穿过液-气界面。直流常数通过探针线施加电流,并根据探针压降的变化确定膜厚。该技术可以同时测量去离子水的直接接触电阻加热的膜厚和液体温度。无需滤波信号即可直接获得清晰,简单的波浪轮廓。;使用从实验测量获得的液体温度边界条件,对波浪期间壁温和对流传热系数的变化进行了数值研究。假设移动坐标系中存在周期性边界条件,则求解加热器壁中的能量方程。结果表明,在一个波浪周期内,热通量和对流换热系数都有很大的变化。但是,壁温波动很小,以至于假设在一个波浪周期内壁温均匀,导致Re的传热计算中的误差很小。

著录项

  • 作者

    Lyu, Tae-Hwan.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Mechanical.;Physics Fluid and Plasma.
  • 学位 Ph.D.
  • 年度 1990
  • 页码 199 p.
  • 总页数 199
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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